CN222293539U - A transport device for supply chain management logistics delivery - Google Patents

A transport device for supply chain management logistics delivery Download PDF

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Publication number
CN222293539U
CN222293539U CN202420997876.7U CN202420997876U CN222293539U CN 222293539 U CN222293539 U CN 222293539U CN 202420997876 U CN202420997876 U CN 202420997876U CN 222293539 U CN222293539 U CN 222293539U
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plate
lifting
belt
motor
supply chain
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冯超
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Anhui Noda Supply Chain Technology Co ltd
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Anhui Noda Supply Chain Technology Co ltd
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Abstract

The utility model discloses a conveying device for logistics conveying of supply chain management, which comprises a movable seat, a lifting plate, a movable plate and a supporting plate, wherein the lifting plate which can extend out of an opening of the movable seat is arranged in the movable seat in a lifting manner, the movable plate which can be perpendicular to the movable seat after rotation is arranged at the upper end of the lifting plate, the movable plate is provided with a lifting plate which can move along the length direction of the movable plate, the lifting plate is fixedly provided with the supporting plate perpendicular to the movable plate, the lifting plate is provided with a row of telescopic pushing pieces which can move towards the supporting plate in the length direction of the supporting plate, and the row of pushing pieces can move along the length direction of the supporting plate through a belt transmission mechanism.

Description

Transportation device for logistics transportation of supply chain management
Technical Field
The utility model relates to the field of logistics conveying equipment, in particular to a conveying device for logistics conveying of supply chain management.
Background
With the continuous development of the internet technology and logistics industry in China, the requirements on long-distance and multi-point transportation of commodities are gradually increased, and particularly in the current production mode of a supply chain, the commodities need to be stored on shelves in a logistics warehouse from a logistics trolley or removed from the shelves in a storage bin to be conveyed to different places.
Through the search, the Chinese patent application number is CN202311513651.6, and discloses a conveying device for logistics conveying of supply chain management, which can stably limit and support a goods shelf during transportation and transfer through the arrangement of a stabilizing mechanism, and can synchronously extend a horizontal plane and limit expansion in the vertical direction through an absorbing part and a synchronizing part, thereby realizing the operation automation and simplicity of equipment and reducing the use and maintenance of other electric control parts.
The inventors have found that the following problems exist with the prior art in the practice of the present utility model:
in the use, on inconvenient placing the goods on the goods shelves put the thing board or also inconvenient follow goods take off on putting the thing board of goods shelves, need the staff cooperation just can realize automatic feeding and unloading, especially the goods of heavyweight level, go up the unloading in-process comparatively laborious, degree of automation is lower.
Therefore, the utility model provides the transportation device for conveying the supply chain management logistics, which can realize the function of automatic feeding and discharging in the use process, improves the automation degree, has the functions of folding and storing, and is convenient to move and carry.
Disclosure of utility model
Aiming at the technical problems, the utility model aims to solve the problems that in the prior art, the goods are inconvenient to be placed on a storage plate on a goods shelf or inconvenient to be taken down from the storage plate on the goods shelf, automatic feeding and discharging can be realized only by cooperation of staff, especially for heavy-weight goods, the feeding and discharging processes are laborious and the automation degree is low, so that the utility model provides the conveying device for the logistics management in use, which can realize the function of automatic feeding and discharging in use, improves the automation degree, has folding and storage functions and is convenient to move and carry.
In order to achieve the above object, the present utility model provides a transportation device for supply chain management logistics transportation, comprising a movable base, a lifting plate, a movable plate and a supporting plate;
The inside of uncovered up remove the seat is provided with the lifter plate that can follow its uncovered extension with liftable, the upper end of lifter plate rotationally be provided with rotate the back can with remove seat vertically fly leaf, the fly leaf is provided with the support board that lifts that can follow its length direction and remove, lift the support board fixedly be provided with fly leaf vertically backup pad, be located the backup pad top lift the support board be provided with can be oriented the backup pad is close to a row of telescopic pushing piece, and a row the pushing piece can be followed through belt drive mechanism the length direction of backup pad removes.
Preferably, the belt transmission mechanism comprises a belt, a belt roller and a motor III, wherein,
The lifting plate is arranged at intervals and can move towards the supporting plate and is perpendicular to the lifting plate, at least two belt rollers are arranged between the two pressing plates at intervals and horizontally rotatably, all belt rollers are connected through belt connection transmission, a row of pushing pieces perpendicular to the belt is arranged at equal intervals along the width direction of the belt, any one of the pressing plates is fixedly provided with a fourth motor which drives any one of the belt rollers to rotate, and an output shaft of the fourth motor is coaxially connected with the belt rollers through a coupler.
Preferably, each pushing piece comprises a cylinder body, a sliding block, a pushing rod and a pushing contact, wherein,
The belt is characterized in that a sliding block is slidably arranged in the cylinder body, the sliding block is fixedly provided with a pushing rod which can extend out of the bottom end of the cylinder body, the end part of the pushing rod which extends out is fixedly provided with a pushing contact, one end of the cylinder body, which is close to the belt, is fixedly provided with a tensioning spring, and the other end of the tensioning spring is fixed on the sliding block.
Preferably, the upper end part of the lifting plate is inwards recessed to form a storage groove, an electric telescopic rod is obliquely and hingedly arranged in the storage groove, and the free end of a piston rod of the oblique electric telescopic rod is hinged on the movable plate.
Preferably, the transportation device also comprises a first lifting mechanism for driving the lifting plate to lift along the vertical direction, wherein the first lifting mechanism comprises a first screw rod formed by two screws with opposite screw thread directions, a first sliding block respectively screwed on the two screws, a support frame with the middle part hinged together to form an X shape and a first motor,
The lifting plate is characterized in that the first screw rod is horizontally and rotatably arranged on the movable seat, the bottom end part of the lifting plate is inwards recessed to form an assembly groove, two movable blocks are arranged in the assembly groove at intervals and movably, two supporting points at the bottom end of the supporting frame are distributed and hinged on the first sliding block, two supporting points at the top end of the supporting frame are distributed and hinged on the second sliding block, the first motor is horizontally fixed on the movable seat, and an output shaft of the first motor is coaxially connected with the first screw rod through a coupling.
Preferably, the bottom of the movable seat is horizontally and fixedly provided with a guide rail, the bottoms of the two first sliding blocks are respectively partially recessed inwards to form a guide groove, and the two first sliding blocks are respectively slidably assembled on the guide rail through the guide grooves.
Preferably, the transportation device also comprises a second lifting mechanism for driving the lifting plate to move along the length direction of the movable plate, wherein the second lifting mechanism comprises a second screw rod, a second sliding block and a second motor,
The lifting plate is arranged on the back of the lifting plate, the upper part of the movable plate is inwards recessed to form a first guide groove, a second screw rod is rotatably arranged in the first guide groove, a second sliding block which can extend out of the first guide groove is fixedly arranged on the second screw rod through threads, the lifting plate is fixed on the second sliding block, the second motor is fixed in the first guide groove, and an output shaft of the second motor is coaxially connected with the second screw rod through a coupling.
Preferably, the transportation device also comprises an adjusting mechanism for driving the two pressing plates to approach towards the supporting plate, wherein the adjusting mechanism comprises a screw rod III, a sliding block III and a motor III,
The inside of lifting the layer board rotationally be provided with the parallel No. three lead screws of fly leaf, no. three lead screw upper thread tightening is provided with No. three sliders, and is facing away from the fly leaf on the lifter plate spaced apart be equipped with its inside be linked together No. two guide slots, no. three slider parts are respectively followed two No. two guide slots are stretched out and are fixedly provided with the clamp plate.
Preferably, baffles are fixedly arranged on two sides of the supporting plate respectively.
According to the technical scheme, the transportation device for logistics transportation of supply chain management has the beneficial effects that:
(1) When the movable plate pushing device is used, a row of pushing pieces move to a proper position towards the movable plate, the movable plate is rotated to enable the movable plate to rotate to a vertical state from a horizontal state, then the lifting plates are driven to drive the supporting plates to descend along the vertical direction, when the lifting plates drive the supporting plates to descend to the supporting plates to the ground along the vertical direction so as to move cargoes to the supporting plates, the lifting plates drive the supporting plates and cargoes placed on the supporting plates to rise together to be aligned with the storage plates corresponding to the goods shelves, and a row of pushing pieces descend to the proper position along the vertical direction so as to drive a row of pushing plates to move towards the storage plates of the goods shelves, and the cargoes can be pushed to move towards the storage plates of the goods shelves in the process of moving towards the storage plates of the goods shelves so as to be placed on the goods shelves. Thereby completing the function of automatic feeding.
When goods need to be taken from a goods shelf of a warehouse, the movable plate is rotated to enable the movable plate to be rotated to be in a vertical state from a horizontal state, then the lifting support plate is driven to be lifted to be aligned with a goods placing plate corresponding to the goods shelf, the position of one row of pushing pieces is adjusted to enable the pushing plate to be located between the goods and the goods placing plate located above the goods shelf, one row of pushing pieces is contracted to reduce the length of the pushing pieces, one row of pushing plates can be enabled to smoothly move from a gap between the goods and the goods placing plate located above the goods shelf, one row of pushing plates is enabled to be far away from the lifting support plate until the other end of the goods is enabled to be moved by the pushing plate, then one row of pushing plates is stretched to enable the length of the one row of pushing plates to be enabled to be long and to be abutted against the side wall of the goods, and one row of pushing plates is enabled to be pushed to move towards the lifting plate, so that the goods is pushed to leave the goods placing plate of the goods shelf and is transferred onto the support plate, and the automatic unloading function is achieved.
(2) The lifting plate is driven to drive the movable plate to lift along the vertical direction, so that the height of the movable plate in the vertical direction is increased, the lifting plate can lift to a higher position, and the lifting plate can be suitable for taking and placing cargoes on a higher goods shelf. The application range is wider.
(3) Because the movable plate can rotate, when not using, can rotate the movable plate so that it becomes the horizontality from vertical state, and order about in the lifter plate accomodates in the removal seat order about the movable plate along vertical direction decline to with remove the upper end of seat, reduce the occupation space of whole device, conveniently remove and carry.
Therefore, the automatic feeding and discharging device can realize the function of automatic feeding and discharging, improves the degree of automation, has the functions of folding and storing, and is convenient to move and carry.
Additional features and advantages of the utility model will be set forth in the detailed description which follows, and in part will be obvious from the description, or may be learned by practice of the utility model.
Drawings
The accompanying drawings are included to provide a further understanding of the utility model, and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the description serve to explain, without limitation, the utility model. In the drawings:
FIG. 1 is a schematic view of a transport device for supply chain management logistics transportation provided in a preferred embodiment of the present utility model;
FIG. 2 is a schematic view showing an internal structure of a transportation device for transporting supply chain management logistics provided in a preferred embodiment of the present utility model;
FIG. 3 is a schematic view showing a structure of another state of a transportation device for transporting supply chain management logistics provided in a preferred embodiment of the present utility model;
fig. 4 is a schematic structural view of a pusher of a transporting device for supply chain management logistics transportation provided in a preferred embodiment of the present utility model.
Description of the reference numerals
1. The device comprises a movable seat, a lifting plate, a movable plate, a lifting support plate, a pressing plate, a pushing piece, a 701, a cylinder, a 702, a sliding block, a 703, a pushing rod, a 704, a pushing contact, a lifting mechanism No. 8, a lifting mechanism No. 9, a lifting mechanism No. two, a 10, an adjusting mechanism, a 11, an electric telescopic rod, a 12, a baffle, a 13, a belt transmission mechanism, a 14, a guide groove No. one, a guide groove No. 15, a guide groove No. two, a 16 and a tensioning spring.
Detailed Description
The following describes specific embodiments of the present utility model in detail with reference to the drawings. It should be understood that the detailed description and specific examples, while indicating and illustrating the utility model, are not intended to limit the utility model.
As shown in fig. 1 to 4, the present utility model provides a transportation device for transporting supply chain management logistics, comprising a movable base 1, a lifting plate 2, a movable plate 3 and a supporting plate 5;
The inside of the movable seat 1 with the opening upwards is provided with a lifting plate 2 which can extend out from the opening of the movable seat, the upper end of the lifting plate 2 is rotatably provided with a movable plate 3 which can be perpendicular to the movable seat 1 after rotating, the movable plate 3 is provided with a lifting plate 4 which can move along the length direction of the movable plate, the lifting plate 4 is fixedly provided with a supporting plate 5 perpendicular to the movable plate 3, the lifting plate 4 above the supporting plate 5 is provided with a row of telescopic pushing pieces 7 which can face the supporting plate 5, and the row of pushing pieces 7 can move along the length direction of the supporting plate 5 through a belt transmission mechanism 13.
In the above scheme, because the goods shelf is divided into a plurality of layers by the plurality of object placing plates, the object placing plates of each layer can be used for placing goods, and in order to facilitate taking and placing the goods, enough space is reserved between the upper object placing plate and the lower object placing plate, and when the goods are placed on the object placing plates, a certain gap is reserved between the top of the goods and the object placing plate above the top of the goods.
When the lifting support plate 4 drives the support plate 5 to descend to the ground along the vertical direction, so as to move cargoes onto the support plate 5, and drives the lifting support plate 4 to drive the support plate 5 and cargoes placed on the support plate 5 to ascend together to be aligned with a storage plate corresponding to a goods shelf, and one row of the pushing members 7 descends to a proper position along the vertical direction, so that the cargoes on the support plate 5 can be pushed to move towards the storage plate of the goods shelf in the process of driving one row of the pushing plates 7 to move towards the storage plate of the goods shelf, and the cargoes are placed on the goods shelf. Thereby completing the function of automatic feeding.
When goods need to be taken from the goods shelves of the warehouse, the movable plate 3 is rotated to enable the goods to be rotated to be in a vertical state from a horizontal state, then the lifting support plate 4 is driven to be lifted to be aligned with the goods shelf corresponding to the goods shelves, the position of one row of the pushing pieces 7 is adjusted to enable the pushing pieces 7 to be located between the goods and the goods shelf located above the goods shelf, the one row of the pushing pieces 7 is contracted to reduce the length of the pushing pieces, the one row of the pushing pieces 7 can be smoothly moved from a gap between the goods and the goods shelf located above the goods shelf, the one row of the pushing pieces 7 can be moved away from the lifting support plate 4 until the other end of the goods is moved by the one row of the pushing pieces 7, then the one row of the pushing pieces 7 is stretched to enable the length of the one row of the pushing pieces 7 to be lengthened and to be abutted against the side walls of the goods, and the one row of the pushing pieces 7 is reversely moved to enable the goods to be pushed to be moved towards the lifting support plate 4, so that the goods can be pushed to leave the goods shelf and be carried on the goods shelf and the goods shelf is automatically moved to the support plate 5, and the unloading function is completed.
In addition, the lifting plate 2 is driven to drive the movable plate 3 to lift along the vertical direction, so that the height of the movable plate 3 in the vertical direction is increased, the lifting plate 4 can lift to a higher position, and the lifting plate can be suitable for taking and placing cargoes on a higher goods shelf.
Because fly leaf 3 is rotatable, therefore, when not using, can rotate fly leaf 3 in order to make it become the horizontality from vertical state, and drive lifter plate 2 accomodate in the removal seat 1 drive fly leaf 3 along vertical direction descend to with remove the upper end of seat 1, reduce the occupation space of whole device, conveniently remove and carry.
In a preferred embodiment of the utility model, the belt drive 13 comprises a belt, a belt roller and a motor No. three, wherein,
The lifting plate 4 is arranged at intervals and movably with two pressing plates 6 which can move towards the supporting plate 5 and are perpendicular to the lifting plate 4, at least two belt rollers are arranged between the pressing plates 6 at intervals and horizontally rotatably, all belt rollers are connected together through belt connection transmission, a row of pushing pieces 7 perpendicular to the belt is arranged at equal intervals along the width direction of the belt, any one of the pressing plates 6 is fixedly provided with a fourth motor which drives any one of the belt rollers to rotate, and an output shaft of the fourth motor is coaxially connected with the belt rollers through a coupling.
In the above scheme, the belt roller is driven to rotate through the motor No. four, so that the belt is driven to run anticlockwise, and the belt can drive a row of pushing pieces 7 to horizontally move along the length direction of the pressing plate 6 in the anticlockwise running process, and the goods on the supporting plate 5 can be pushed to move on the storage plate of the goods shelf in the moving process, so that the automatic feeding function is realized.
When the goods on the goods shelf need to be taken down, the belt roller is driven to rotate clockwise through the fourth motor, so that the belt is driven to run clockwise, and in the clockwise running process, the belt drives a row of pushing pieces 7 to move from bottom to top from one end close to the movable plate 3 and then move along the horizontal direction until a row of pushing pieces 7 move from the other end of the pressing plate 6 downwards and then move towards the movable plate 3 along the horizontal direction under the pressing plate 6 and push the goods, so that the goods leave the goods and enter the supporting plate 5, and the automatic unloading function is realized.
In a preferred embodiment of the utility model, each of said pusher members 7 comprises a cylinder 701, a slide 702, a pusher bar 703 and a pusher contact 704, wherein,
A sliding block 702 is slidably arranged in the cylinder 701 which is perpendicular to the belt, a pushing rod 703 which can extend from the bottom end of the cylinder 701 is fixedly arranged on the sliding block 702, a pushing contact 704 is fixedly arranged on the end part of the extending pushing rod 703, a tensioning spring 16 is fixedly arranged at one end of the cylinder 701 which is close to the belt, and the other end of the tensioning spring 16 is fixed on the sliding block 702.
In the above-mentioned scheme, when the pushing member 7 is moved to a proper position towards the movable plate 3, and the movable plate 3 is rotated to rotate from a horizontal state to a vertical state, then the lifting plate 4 is driven to drive the supporting plate 5 to descend in a vertical direction, when the lifting plate 4 drives the supporting plate 5 to descend in a vertical direction to the supporting plate 5 to the ground, so as to move the goods onto the supporting plate 5, and drives the lifting plate 4 to drive the supporting plate 5 and the goods placed on the supporting plate 5 to rise together to be aligned with the goods placement plate corresponding to the goods shelf, when the pushing member 7 is lowered to a position lower than the height of the goods in the vertical direction, the return spring 16 is in a natural extension state, so that the goods can be pushed to move onto the goods shelf towards the goods placement plate of the supporting plate 5 in the process of driving the goods placement plate 7 to move through the belt transmission mechanism 13, thereby completing the function of automatically placing the goods onto the goods.
When the goods on the goods shelf need to be taken down, the lifting support plate 4 is driven to drive the support plate 5 and the goods placed on the support plate 5 to rise together to be aligned with the goods placing plate corresponding to the goods shelf, when one row of pushing pieces 7 is lowered to the height of the goods in the vertical direction, the belt roller is driven to reversely rotate through the fourth motor, so that one row of pushing pieces 7 runs in the clockwise direction on the belt, runs upwards from the end parts of the two pressing plates 6 close to the movable plate 3 and runs upwards along one row of pushing contacts 704 and abuts against the goods placing plate above the goods, under the action of the goods placing plate, the pushing rod 703 is retracted towards the inside of the cylinder 701 and pushes the sliding block 702 to move towards the bottom of the cylinder 701 and compress the reset spring 16 to enable the sliding block to be in a compressed state, so as to reduce the length of a row of the pushing pieces 7, so that the row of the pushing pieces 7 can smoothly pass through a gap between the goods and the placing plate above the goods and move to the other side of the goods, when the row of the pushing pieces 7 moves to the other end of the pressing plate 6, the row of the pushing pieces 7 above the pressing plate 6 moves along the placing plate and towards the end far away from the movable plate 4, under the transmission action of the belt, the row of the pushing contacts 704 faces downwards and is separated from the placing plate above the goods, after separation, the row of the pushing rods 703 extend out of the cylinder 701 and push the pushing contacts 704 to extend downwards under the action of the return spring 16, so that the added pushing pieces 7 can be attached to the side wall of the goods, and then the pushing pieces 7 arranged along with the pushing pieces move along with the belt and push the goods to leave the storage plate of the goods shelf and move the rod towards the supporting plate 5, so that the automatic discharging function is realized.
In the above scheme, the length of the pressing plate 6 is greater than the length of the supporting plate 5, so that when a row of pushing pieces 7 moves along with the direction of the belt to a position away from one end of the movable plate 4, the row of pushing pieces 7 can be located at the other side of the goods, so that the row of pushing pieces 7 moves along with the belt and pushes the goods to leave the placing plate of the goods shelf and move towards the moving rod on the supporting plate 5, and the automatic unloading function is realized.
In a preferred embodiment of the present utility model, the upper end portion of the lifting plate 2 is recessed inward to form a receiving groove, and an electric telescopic rod 11 is disposed in the receiving groove in an inclined and hinged manner, and a free end of a piston rod of the electric telescopic rod 11 in an inclined manner is hinged to the movable plate 3.
In the above scheme, the movable plate 3 is driven to turn from the horizontal direction to the vertical state along the hinge position or from the vertical state to the horizontal state reversely in the process of driving the piston rod of the electric telescopic rod 11 to extend from the cylinder part or retract into the cylinder part.
The size and the assembly mode of the electric telescopic rod 11 can be selected and assembled according to the actual use condition, and the air cylinder or the hydraulic cylinder is a prior art, so the specific structure and the use principle thereof will not be described herein.
In a preferred embodiment of the utility model, the transportation device also comprises a first lifting mechanism 8 for driving the lifting plate 2 to lift along the vertical direction, wherein the first lifting mechanism 8 comprises a first screw rod consisting of two screws with opposite screw thread directions, a first sliding block respectively fixed on the two screws in a screw thread way, a support frame with the middle part hinged together and shaped like an X and a first motor,
The lifting plate is characterized in that the first screw rod is horizontally and rotatably arranged on the movable seat 1, the bottom end part of the lifting plate 2 is inwards recessed to form an assembly groove, two movable blocks are arranged in the assembly groove at intervals and in a movable mode, two supporting points at the bottom end of the supporting frame are distributed and hinged to the first sliding block, two supporting points at the top end of the supporting frame are distributed and hinged to the second sliding block, the first motor is horizontally fixed on the movable seat 1, and an output shaft of the first motor is coaxially connected with the first screw rod through a coupling.
In the above scheme, during the use, drive through a motor drive a lead screw rotates and drives two a slider is close to each other or keeps away from, when two a slider is in the in-process of being close to each other in order to drive the upper and lower contained angle of support frame diminish, thereby drive lifter plate 2 follow along vertical direction remove the uncovered of seat 1 stretches out, so as to drive lifter plate 2 is last lifter plate 3 rises together, and two a lead screw rotates and drives two a slider and is close to each other or keep away from, and two a slider is kept away from each other in-process in order to drive the upper and lower contained angle grow of support frame, thereby drive lifter plate along vertical direction decline and accomodate in the seat 1 is moved, so as to drive lifter plate 2 is last lifter plate 3 descends in the lump. The occupied space of the whole device is reduced, and the device is convenient to carry.
In a preferred embodiment of the present utility model, a guide rail is horizontally and fixedly disposed at the bottom end of the movable seat 1, and the bottom ends of the first sliders are respectively partially recessed inward to form guide grooves, and the first sliders are respectively slidably assembled on the guide rail through the guide grooves.
In the above scheme, under the cooperation of the guide rail and the guide grooves of the two first sliders, the screw rod can be ensured to drive the two first sliders to be stably and reliably close to or far away from each other in the rotating process.
In a preferred embodiment of the utility model, the transporting device further comprises a second lifting mechanism 9 for driving the lifting plate 4 to move along the length direction of the movable plate 3, wherein the second lifting mechanism 9 comprises a second screw rod, a second sliding block and a second motor, wherein,
The upper part of the movable plate 3 opposite to the lifting plate 2 is inwards recessed to form a first guide groove 14, a second screw rod is rotatably arranged in the first guide groove 14, a second sliding block capable of extending out of the first guide groove 14 is fixedly arranged on the second screw rod through threads, the lifting plate 4 is fixed on the second sliding block, a second motor is fixed in the first guide groove 14, and an output shaft of the second motor is coaxially connected with the second screw rod through a coupling.
In the above scheme, during use, the second screw rod is driven to rotate so as to drive the second sliding block to move along the shaft body of the second screw rod, so that the second sliding block is driven to move along the length direction of the movable plate 3 in the moving process.
In a preferred embodiment of the utility model, the transportation device further comprises an adjusting mechanism 10 for driving the two pressing plates 6 to approach the supporting plate 5, wherein the adjusting mechanism 10 comprises a screw rod III, a sliding block III and a motor III, and the pressing plates are arranged on the bottom surface of the supporting plate 5,
The inside of lifting board 4 rotationally be provided with the parallel No. three lead screws of fly leaf 3, no. three lead screw upper thread tightening is provided with No. three sliders, and is on the back of fly leaf 3 on the lifter plate 2 spaced apart be equipped with No. two guide slots 15 that are linked together with its inside, no. three slider parts are respectively followed two No. two guide slots 15 stretch out and fixedly are provided with clamp plate 6.
In the above scheme, the third slider is driven to move along the shaft body thereof by driving the third screw to rotate, and the third slider drives the two pressing plates 6 to move together in the moving process, so that the belt transmission mechanism 13 drives the one row of pushing pieces 7 to descend to a proper position so as to push goods, and therefore, the height of the belt transmission mechanism 13 is regulated by the regulating mechanism 10, and the position of the one row of pushing pieces 7 is regulated, so that the one row of pushing pieces 7 is moved to realize the function of automatic feeding or discharging.
In a preferred embodiment of the utility model, the two sides of the support plate 5 are each fixedly provided with a baffle 12.
In the above scheme, the goods are limited, and the goods are prevented from falling from the supporting plate 5 in the transferring process.
In summary, the transportation device for supply chain management logistics transportation provided by the utility model solves the problems that in the prior art, the goods are inconvenient to place on a storage plate on a goods shelf or inconvenient to take down from the storage plate on the goods shelf, automatic feeding and discharging can be realized only by cooperation of staff, especially heavy-weight goods, and the feeding and discharging processes are laborious and the degree of automation is low.
The preferred embodiments of the present utility model have been described in detail above with reference to the accompanying drawings, but the present utility model is not limited to the specific details of the above embodiments, and various simple modifications can be made to the technical solution of the present utility model within the scope of the technical concept of the present utility model, and all the simple modifications belong to the protection scope of the present utility model.
In addition, the specific features described in the above embodiments may be combined in any suitable manner, and in order to avoid unnecessary repetition, various possible combinations are not described further.
Moreover, any combination of the various embodiments of the utility model can be made without departing from the spirit of the utility model, which should also be considered as disclosed herein.

Claims (9)

1. The transportation device for conveying the supply chain management logistics is characterized by comprising a movable seat (1), a lifting plate (2), a movable plate (3) and a supporting plate (5);
The inside of uncovered up remove seat (1) liftable be provided with can follow lifter plate (2) that its uncovered stretches out, lifter plate (2) upper end rotationally be provided with rotate back can with remove seat (1) vertically fly leaf (3), fly leaf (3) are provided with can follow its length direction and remove lift layer board (4), lift layer board (4) fixedly be provided with fly leaf (3) vertically backup pad (5), be located lift layer board (4) of backup pad (5) top are provided with can be oriented backup pad (5) are close to one row of telescopic pushing piece (7), and one row of pushing piece (7) can be followed through belt drive mechanism (13) the length direction of backup pad (5) removes.
2. The transport device for supply chain management logistics transportation according to claim 1, wherein the belt transmission mechanism (13) comprises a belt, a belt roller and a motor No. three, wherein,
The belt conveyor is characterized in that the lifting plates (4) are arranged at intervals and movably, two pressing plates (6) which can move towards the supporting plates (5) and are perpendicular to the lifting plates (4) are arranged between the pressing plates (6) at intervals and horizontally rotatably, at least two belt rollers are arranged between the pressing plates (6), all the belt rollers are connected together through belt connection transmission, a row of pushing pieces (7) perpendicular to the belt is arranged at equal intervals along the width direction of the belt, and any one of the pressing plates (6) is fixedly provided with a fourth motor which drives any one of the belt rollers to rotate, and an output shaft of the fourth motor is coaxially connected with the belt rollers through a coupler.
3. The transport device for supply chain management logistics transportation according to claim 2, wherein each pusher (7) comprises a cylinder (701), a slider (702), a pusher bar (703) and a pusher contact (704), wherein,
The belt is characterized in that a sliding block (702) is slidably arranged in the cylinder (701) which is perpendicular to the belt, a pushing rod (703) which can extend from the bottom end of the cylinder (701) is fixedly arranged on the sliding block (702), a pushing contact (704) is fixedly arranged on the end part of the extending pushing rod (703), one end of the cylinder (701) which is close to the belt is fixedly provided with a tensioning spring (16), and the other end of the tensioning spring (16) is fixed on the sliding block (702).
4. The transportation device for conveying supply chain management logistics according to claim 1, wherein the upper end portion of the lifting plate (2) is inwards recessed to form a containing groove, an electric telescopic rod (11) is obliquely and hingedly arranged in the containing groove, and the free end of a piston rod of the oblique electric telescopic rod (11) is hinged on the movable plate (3).
5. The transportation device for transporting supply chain management logistics according to claim 1, further comprising a first lifting mechanism (8) for driving the lifting plate (2) to lift along the vertical direction, wherein the first lifting mechanism (8) comprises a first screw rod composed of two screws with opposite screw directions, a first sliding block respectively screwed on the two screws, a support frame with an X-shaped middle part hinged together and a first motor,
The lifting device is characterized in that a first screw rod is horizontally and rotatably arranged on the movable seat (1), an assembly groove is formed by inwards sinking the bottom end part of the lifting plate (2), two movable blocks are arranged in the assembly groove at intervals and movably, two supporting points at the bottom end of the supporting frame are distributed and hinged on the first sliding block, two supporting points at the top end of the supporting frame are distributed and hinged on the second sliding block, a first motor is horizontally fixed on the movable seat (1), and an output shaft of the first motor is coaxially connected with the first screw rod through a coupling.
6. The transportation device for transporting supply chain management logistics according to claim 5, wherein a guide rail is horizontally and fixedly arranged at the bottom end of the movable seat (1), the bottom ends of the first sliders are respectively partially recessed inwards to form guide grooves, and the first sliders are respectively slidably assembled on the guide rail through the guide grooves.
7. The transport device for transporting supply chain management logistics according to claim 1, further comprising a second lifting mechanism (9) for driving the lifting plate (4) to move along the length direction of the movable plate (3), wherein the second lifting mechanism (9) comprises a second screw rod, a second slide block and a second motor, wherein,
The lifting plate (2) is arranged at the back of the lifting plate, the upper part of the movable plate (3) is inwards recessed to form a first guide groove (14), a second screw rod is rotatably arranged in the first guide groove (14), a second sliding block which can extend out of the first guide groove (14) is fixedly arranged on the second screw rod through threads, the lifting plate (4) is fixed on the second sliding block, a second motor is fixed in the first guide groove (14), and an output shaft of the second motor is coaxially connected with the second screw rod through a coupling.
8. The transportation device for transporting supply chain management logistics according to claim 2, further comprising an adjusting mechanism (10) for driving two pressing plates (6) to approach towards the supporting plate (5), wherein the adjusting mechanism (10) comprises a screw No. three, a slider No. three and a motor No. three,
The inside of lifting board (4) rotationally be provided with No. three lead screws of fly leaf (3) parallel, no. three lead screw upper thread fixed be provided with No. three sliders, and dorsad fly leaf (3) on lifter plate (2) spaced apart be equipped with No. two guide slots (15) that are linked together with its inside, no. three slider parts are respectively followed two No. two guide slots (15) stretch out and fixedly are provided with clamp plate (6).
9. The transport device for transporting supply chain management logistics according to claim 1, wherein baffles (12) are fixedly arranged on both sides of the supporting plate (5).
CN202420997876.7U 2024-05-09 2024-05-09 A transport device for supply chain management logistics delivery Active CN222293539U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202420997876.7U CN222293539U (en) 2024-05-09 2024-05-09 A transport device for supply chain management logistics delivery

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202420997876.7U CN222293539U (en) 2024-05-09 2024-05-09 A transport device for supply chain management logistics delivery

Publications (1)

Publication Number Publication Date
CN222293539U true CN222293539U (en) 2025-01-03

Family

ID=93963914

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202420997876.7U Active CN222293539U (en) 2024-05-09 2024-05-09 A transport device for supply chain management logistics delivery

Country Status (1)

Country Link
CN (1) CN222293539U (en)

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